Batchelor Eric, Goulian Mark
Department of Physics, University of Pennsylvania, Philadelphia, 19104, USA.
Mol Microbiol. 2006 Mar;59(6):1767-78. doi: 10.1111/j.1365-2958.2006.05048.x.
We have used a fusion of GFP to the response regulator OmpR to image the spatial distribution of OmpR in live cells of Escherichia coli. We observed foci of increased OmpR-GFP fluorescence that appear to be due to interactions with the histidine kinase EnvZ. We also observed colocalization of OmpR-GFP with clusters of plasmids carrying OmpR binding sites, which enabled us to develop a simple method for imaging the binding of OmpR to DNA in live cells. We used the peak fluorescence intensity within cells to quantify the extent of OmpR-GFP localization either due to interactions with EnvZ or due to binding DNA. With these assays we compared the effects of osmolarity and procaine, both of which are believed to modulate EnvZ activity. Our results suggest that, at least under our growth conditions, procaine activates EnvZ-OmpR signalling whereas osmolarity has, at best, a weak effect on the EnvZ-OmpR system.
我们将绿色荧光蛋白(GFP)与应答调节因子OmpR融合,以成像大肠杆菌活细胞中OmpR的空间分布。我们观察到OmpR-GFP荧光增强的焦点,这似乎是由于与组氨酸激酶EnvZ相互作用所致。我们还观察到OmpR-GFP与携带OmpR结合位点的质粒簇共定位,这使我们能够开发一种在活细胞中成像OmpR与DNA结合的简单方法。我们使用细胞内的峰值荧光强度来量化由于与EnvZ相互作用或由于结合DNA而导致的OmpR-GFP定位程度。通过这些测定,我们比较了渗透压和普鲁卡因的作用,这两者都被认为可调节EnvZ活性。我们的结果表明,至少在我们的生长条件下,普鲁卡因激活EnvZ-OmpR信号传导,而渗透压对EnvZ-OmpR系统的影响充其量是微弱的。